果蝇胚胎干细胞样细胞可以替代胚胎干细胞,并且在胚胎干细胞缺失时对多梳沉默起作用。

Drosophila ESC-like can substitute for ESC and becomes required for Polycomb silencing if ESC is absent.

作者信息

Kurzhals Rebeccah L, Tie Feng, Stratton Carl A, Harte Peter J

机构信息

Department of Genetics, School of Medicine, Case Western Reserve University, 10900 Euclid Ave., Cleveland, OH 44106-4955, USA.

出版信息

Dev Biol. 2008 Jan 1;313(1):293-306. doi: 10.1016/j.ydbio.2007.10.025. Epub 2007 Oct 25.

Abstract

The Drosophila esc-like gene (escl) encodes a protein very similar to ESC. Like ESC, ESCL binds directly to the E(Z) histone methyltransferase via its WD region. In contrast to ESC, which is present at highest levels during embryogenesis and low levels thereafter, ESCL is continuously present throughout development and in adults. ESC/E(Z) complexes are present at high levels mainly during embryogenesis but ESCL/E(Z) complexes are found throughout development. While depletion of either ESCL or ESC by RNAi in S2 and Kc cells has little effect on E(Z)-mediated methylation of histone H3 lysine 27 (H3K27), simultaneous depletion of ESCL and ESC results in loss of di- and trimethyl-H3K27, indicating that either ESC or ESCL is necessary and sufficient for di- and trimethylation of H3K27 in vivo. While E(Z) complexes in S2 cells contain predominantly ESC, in ESC-depleted S2 cells, ESCL levels rise dramatically and ESCL replaces ESC in E(Z) complexes. A mutation in escl that produces very little protein is viable and exhibits no phenotypes but strongly enhances esc mutant phenotypes, suggesting they have similar functions. esc escl double homozygotes die at the end of the larval period, indicating that the well-known "maternal rescue" of esc homozygotes requires ESCL. Furthermore, maternal and zygotic over-expression of escl fully rescues the lethality of esc null mutant embryos that contain no ESC protein, indicating that ESCL can substitute fully for ESC in vivo. These data thus indicate that ESC and ESCL play similar if not identical functions in E(Z) complexes in vivo. Despite this, when esc is expressed normally, escl appears to be entirely dispensable, at least for development into morphologically normal fertile adults. Furthermore, the larval lethality of esc escl double mutants, together with the lack of phenotypes in the escl mutant, further suggests that in wild-type (esc(+)) animals it is the post-embryonic expression of esc, not escl, that is important for development of normal adults. Thus escl appears to function in a backup capacity during development that becomes important only when normal esc expression is compromised.

摘要

果蝇类esc基因(escl)编码一种与ESC非常相似的蛋白质。与ESC一样,ESCL通过其WD区域直接与E(Z)组蛋白甲基转移酶结合。与ESC在胚胎发生期间水平最高而此后水平较低不同,ESCL在整个发育过程以及成虫中持续存在。ESC/E(Z)复合物主要在胚胎发生期间高水平存在,但ESCL/E(Z)复合物在整个发育过程中都能找到。虽然在S2和Kc细胞中通过RNAi耗尽ESCL或ESC对E(Z)介导的组蛋白H3赖氨酸27(H3K27)甲基化影响不大,但同时耗尽ESCL和ESC会导致二甲基和三甲基H3K27缺失,这表明ESC或ESCL对于体内H3K27的二甲基化和三甲基化是必需且充分的。虽然S2细胞中的E(Z)复合物主要包含ESC,但在ESC耗尽的S2细胞中,ESCL水平急剧上升,并且ESCL在E(Z)复合物中取代了ESC。escl中产生极少蛋白质的突变是可行的且无表型,但会强烈增强esc突变体表型,这表明它们具有相似的功能。esc escl双纯合子在幼虫期结束时死亡,这表明esc纯合子中众所周知的“母体拯救”需要ESCL。此外,escl的母体和合子过表达完全拯救了不含ESC蛋白的esc无效突变胚胎的致死性,这表明ESCL在体内可以完全替代ESC。因此,这些数据表明ESC和ESCL在体内E(Z)复合物中发挥相似(如果不是相同)的功能。尽管如此,当esc正常表达时,escl似乎是完全可有可无的,至少对于发育成形态正常的可育成虫来说是这样。此外,esc escl双突变体的幼虫致死性以及escl突变体中无表型,进一步表明在野生型(esc(+))动物中,对于正常成虫的发育而言,是esc的胚胎后表达而非escl的表达是重要的。因此,escl似乎在发育过程中起到一种备用作用,仅在正常esc表达受损时才变得重要。

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